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The pathogenic c.1171A>G (p.Arg391Gly) and c.2359G>A (p.Val787Ile) ABCC6 variants display incomplete penetrance causing pseudoxanthoma elasticum in a subset of individuals

Articolo
Data di Pubblicazione:
2022
Citazione:
The pathogenic c.1171A>G (p.Arg391Gly) and c.2359G>A (p.Val787Ile) ABCC6 variants display incomplete penetrance causing pseudoxanthoma elasticum in a subset of individuals / Szeri, Flora; Miko, Agnes; Navasiolava, Nastassia; Kaposi, Ambrus; Verschuere, Shana; Molnar, Beatrix; Li, Qiaoli; Terry, Sharon F; Boraldi, Federica; Uitto, Jouni; van de Wetering, Koen; Martin, Ludovic; Quaglino, Daniela; Vanakker, Olivier M; Tory, Kalman; Aranyi, Tamas. - In: HUMAN MUTATION. - ISSN 1059-7794. - 43:12(2022), pp. 1872-1881. [10.1002/humu.24498]
Abstract:
ABCC6 promotes ATP efflux from hepatocytes to bloodstream. ATP is metabolized to pyrophosphate, an inhibitor of ectopic calcification. Pathogenic variants of ABCC6 cause pseudoxanthoma elasticum, a highly variable recessive ectopic calcification disorder. Incomplete penetrance may initiate disease heterogeneity, hence symptoms may not, or differently manifest in carriers. Here, we investigated whether incomplete penetrance is a source of heterogeneity in pseudoxanthoma elasticum. By integrating clinical and genetic data of 589 patients, we created the largest European cohort. Based on allele frequency alterations, we identified two incomplete penetrant pathogenic variants, c.2359G>A (p.Val787Ile) and c.1171A>G (p.Arg391Gly), with 6.5% and 2% penetrance, respectively. However, when penetrant, the c.1171A>G (p.Arg391Gly) manifested a clinically unaltered severity. After applying in silico and in vitro characterization, we suggest that incomplete penetrant variants are only deleterious if a yet unknown interacting partner of ABCC6 is mutated simultaneously. The low penetrance of these variants should be contemplated in genetic counseling.
Tipologia CRIS:
Articolo su rivista
Keywords:
calcification; genetic diagnosis; incomplete penetrance; pseudoxanthoma elasticum; pyrophosphate; rare disease
Elenco autori:
Szeri, Flora; Miko, Agnes; Navasiolava, Nastassia; Kaposi, Ambrus; Verschuere, Shana; Molnar, Beatrix; Li, Qiaoli; Terry, Sharon F; Boraldi, Federica; Uitto, Jouni; van de Wetering, Koen; Martin, Ludovic; Quaglino, Daniela; Vanakker, Olivier M; Tory, Kalman; Aranyi, Tamas
Autori di Ateneo:
BORALDI Federica
QUAGLINO Daniela
Link alla scheda completa:
https://iris.unimore.it/handle/11380/1293410
Link al Full Text:
https://iris.unimore.it//retrieve/handle/11380/1293410/457941/2022-Incomplete%20penetrance%20ABCC6_Human%20Mutation.pdf
Pubblicato in:
HUMAN MUTATION
Journal
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